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Assessment of intracranial dynamics in hydrocephalus: effects of viscoelasticity on the outcome of infusion tests

The treatment of hydrocephalus requires insight into the intracranial dynamics in the patient. Resistance to CSF outflow (R0) is a clinically obtainable parameter of intracranial fluid dynamics that quantifies the apparent resistance to CSF absorption. It is used as a criterion for the selection of shunt candidates and serves as an indicator of shunt performance. The R0 is obtained clinically by performing 1 of 3 infusion tests: constant flow, constant pressure, or bolus infusion. Among these, the bolus infusion method has the shortest examination times and provides the shortest time of exposure of patients to artificially increased intracranial pressure (ICP) levels. However, for unknown reasons, the bolus infusion method systematically underestimates the R0. Here, the authors have tested and verified the hypothesis that this underestimation is due to lack of accounting for viscoelasticity of the craniospinal space in the calculation of the R0.

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Reference

S. Bottan, M. Schmid Daners, D. de Zelicourt, N. Fellner, D. Poulikakos, V. Kurtcuoglu. Journal of Neurosurgery, 119(6), 1511 - 1519 (2013). doi: 10.3171/2013.8.JNS122497